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High shear strain behaviour of synthetic muscovite fault gouges under hydrothermal conditions

机译:合成白云母断层泥在水热条件下的高剪切应变行为

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Major continental fault zones typically contain phyllosilicates and have long been recognised as zones of persistent weakness. To establish whether the presence of micas can explain this weakness, we studied the frictional behaviour of simulated muscovite fault gouge by performing rotary shear experiments in the temperature range 20-700 ℃, under constant effective normal stresses of 20-100 MPa, a fixed fluid pressure of 100 MPa and at sliding velocities of 0.03-3.7 μm/s, reaching shear strains up to 100. Catadasis causes substantial grain size reduction up to 600 °C. With increasing strain, both pervasive and localized cataclasis and related compaction result in strain hardening, until steady state is reached. This reflects the progressive development of a continuous network of fine grained, hardening bands. Coarse grained relict lenses between these bands show folded and kinked muscovite grains indicative of ductile mechanisms. Samples deformed at 700 °C show evidence for chemical alteration and partial melting. Since our data suggest that muscovite gouge strengthens with depth and strain, it is questionable whether its presence can contribute to the long-term weakness of major crustal fault zones, unless a substantial decrease in strength occurs at shear strain rates lower than attained in our study.
机译:主要的大陆断层带通常含有页硅酸盐,长期以来一直被认为是持续弱化带。为了确定云母的存在是否可以解释这一弱点,我们通过在固定温度为20-100 MPa的恒定有效法向应力下,在20-700℃的温度范围内进行旋转剪切实验,研究了模拟白云母断层泥的摩擦行为。压力为100 MPa,滑动速度为0.03-3.7μm/ s,剪切应变达到100。催化裂化导致晶粒尺寸显着减小,直至600°C。随着应变的增加,普遍的和局部的催化作用以及相关的压实都会导致应变硬化,直到达到稳态。这反映了细晶粒,硬化带的连续网络的逐步发展。这些条带之间的粗粒遗物镜片显示出折叠和扭结的白云母粒,表明其延展性机制。在700°C下变形的样品显示出化学变化和部分熔融的证据。由于我们的数据表明白云母气刨随着深度和应变的增加而增强,因此怀疑它的存在是否会造成主要地壳断层带的长期弱化,除非在剪切应变率低于我们的研究结果时强度发生实质性降低。 。

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